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Energy-Based Evaluations on Eucalyptus Biomass Production

机译:基于能量的桉树生物质生产评价

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摘要

Dependence on finite resources brings economic, social, and environmental concerns. Planted forests are a biomass alternative to the exploitation of natural forests. In the exploitation of the planted forests, planning and management are key to achieve success, so in forestry operations, both economic and noneconomic factors must be considered. This study aimed to compare eucalyptus biomass production through energy embodiment of anthropogenic inputs and resource embodiment including environmental contribution (emergy) for the commercial forest in the Sao Paulo, Brazil. Energy analyses and emergy synthesis were accomplished for the eucalyptus production cycles. It was determined that emergy synthesis of eucalyptus production and sensibility analysis for three scenarios to adjust soil acidity (lime, ash, and sludge). For both, energy analysis and emergy synthesis, harvesting presented the highest input demand. Results show the differences between energy analysis and emergy synthesis are in the conceptual underpinnings and accounting procedures. Both evaluations present similar trends and differ in the magnitude of the participation of an input due to its origin. For instance, inputs extracted from ores, which represent environmental contribution, are more relevant for emergy synthesis. On the other hand, inputs from industrial processes are more important for energy analysis.
机译:依赖有限资源带来经济,社会和环境问题。种植的森林是一种生物质替代自然森林的替代品。在林业森林的开发中,规划和管理是实现成功的关键,因此在林业运营中,必须考虑经济和非经济因素。该研究旨在通过人为投入和资源实施例的能量实施方案比较桉树生物量产量,包括巴西圣保罗商业林的环境贡献(闻名)。为桉树生产周期完成了能量分析和可闻合成。确定了桉树生产和敏感性分析的可知性合成,用于调整土壤酸度(石灰,灰和污泥)。对于能源分析和素质合成,收获呈现了最高的输入需求。结果表明,能源分析与可闻合成的差异在概念性内在和会计程序中。这两个评估都存在类似的趋势,并且由于其起源而参与投入的程度。例如,从代表环境贡献的矿石中提取的输入更为相关的综合。另一方面,工业过程的输入对于能量分析更为重要。

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